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N-2-乙酰氨基芴和2-氨基芴加合物对酵母DNA聚合酶η的DNA结合及合成的影响。

Effect of N-2-acetylaminofluorene and 2-aminofluorene adducts on DNA binding and synthesis by yeast DNA polymerase eta.

作者信息

Vooradi Venkataramana, Romano Louis J

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

Biochemistry. 2009 May 19;48(19):4209-16. doi: 10.1021/bi9000722.

Abstract

The well-studied aromatic amine carcinogen, N-2-acetylaminofluorene (AAF), forms adducts at the C8 position of guanine in DNA. Unlike replicative polymerases, Y-family polymerases have been shown to have the ability to bypass such bulky DNA lesions. To better understand the mechanism of translesion synthesis by the yeast DNA polymerase eta (yPoleta), a gel retardation technique was used to measure equilibrium dissociation constants of this polymerase for unmodified DNA or DNA containing dG-C8-AAF or the related deacylated dG-C8-AF adduct. These results show that the binding of yPoleta to the unmodified primer-template is substantially stronger in the presence of the next correct nucleotide than when no or an incorrect nucleotide is present. In addition, binding of yPoleta to either dG-C8-AAF or AF-modified templates is also stronger in the presence of dCTP. Finally, the yPoleta complex is destabilized if the primer extends to a position across from the adduct, and stronger binding is not observed in the presence of the next correct nucleotide. Taken together, these data are consistent with the ability of yPoleta to undergo a conformational change to a closed ternary complex in the presence of the next correct nucleotide and on templates containing an AAF or AF adduct but do not rule out other possible explanations.

摘要

经过充分研究的芳香胺致癌物N-2-乙酰氨基芴(AAF)在DNA中鸟嘌呤的C8位置形成加合物。与复制性聚合酶不同,Y家族聚合酶已被证明有能力绕过此类大的DNA损伤。为了更好地理解酵母DNA聚合酶η(yPoleta)进行跨损伤合成的机制,采用凝胶阻滞技术测量该聚合酶对未修饰DNA或含有dG-C8-AAF或相关脱酰基dG-C8-AF加合物的DNA的平衡解离常数。这些结果表明,在存在下一个正确核苷酸时,yPoleta与未修饰引物模板的结合比不存在或存在错误核苷酸时要强得多。此外,在存在dCTP的情况下,yPoleta与dG-C8-AAF或AF修饰模板的结合也更强。最后,如果引物延伸到加合物对面的位置,yPoleta复合物会变得不稳定,并且在下一个正确核苷酸存在时未观察到更强的结合。综上所述,这些数据与yPoleta在存在下一个正确核苷酸且在含有AAF或AF加合物的模板上能够发生构象变化形成封闭三元复合物的能力一致,但并不排除其他可能的解释。

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